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  • High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger
  • High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger
  • High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger
  • High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger
  • High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger
  • High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger
High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger

High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger

$0.50-$30.00/ Piece|10 Piece/Pieces(Min. Order)

Customization:

size(Min.Order: 100 pieces)

High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Insulation: Engineered from cordierite and alumina ceramic to withstand extreme temperatures in industrial ovens, refractory systems, and heat exchangers.
  • Catalytic Efficiency: Honeycomb structure maximizes surface area for optimal chemical reactions in exhaust systems, catalytic converters, and environmental filtration applications.
  • Multi-Functional Design: Combines thermal insulation, heat exchange, and filtration capabilities in a single material, enabling versatile industrial and commercial use.

Key features

  • 1. Material Technology

  • With high-temperature-resistant cordierite ceramic, ensure structural integrity and corrosion protection in extreme environments like industrial furnaces.

  • 2. Performance Parameters

  • With a honeycomb structure, achieve 30% higher heat transfer efficiency than flat ceramic plates, maximizing energy efficiency in heat exchangers.

  • 3. Scenario Solutions

  • With oven/refractory application design, maintain stability up to 1200°C, ideal for high-temperature industrial processes like metal annealing or exhaust systems.

  • 4. Certification Standards

  • With eco-friendly manufacturing, meet ISO 14001 environmental standards, reducing environmental impact without compromising performance.

  • 5. Customization & Adaptability

  • With customizable shapes (round, square, or cubic) and porosity levels, adapt to specific industrial needs such as gas purification or thermal management systems.

Product details

High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb for Heat Exchanger

High Temperature Insulation Catalyst Cordierite Ceramic Honeycomb is engineered for industrial heat exchangers and refractory applications. Crafted from advanced cordierite ceramic, mullite, and alumina ceramic materials, this product combines eco-friendly insulation, high-temperature resistance, and customizable structural designs. Its honeycomb architecture maximizes surface area for optimal thermal efficiency and catalytic performance, while its chemical stability ensures durability in harsh environments.

Technical specifications

FeatureSpecificationBenefit
Material CompositionCordierite ceramic, mullite, alumina ceramicHigh thermal shock resistance and chemical stability
Thermal ResistanceUp to 1400°C continuous operationSafe for ovens, incinerators, and catalytic converters
Porosity45-55% customizable porosityEnhanced heat transfer and filtration efficiency
Shape & PatternSquare, circular, cylindrical, cubicAdaptable to diverse industrial applications
Eco-Friendly DesignLow emissions, recyclable materialsSustainable solution for green manufacturing

Customization guide

Adjustable parameters include porosity levels, cell density, and structural dimensions to meet specific thermal, filtration, or catalytic needs. For example, increasing porosity improves airflow in air purification systems, while denser cells enhance structural integrity in high-pressure environments.

Get inspired

Leverage the high surface area of our honeycomb structures to boost efficiency in exhaust gas treatment, industrial kilns, or energy recovery systems. With customizable shapes and materials, these ceramics can be tailored to optimize performance for your unique thermal or chemical processing requirements.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Operating Temp1200°C+15% (1380°C)+30% (1560°C)*
Porosity45%50%55%
Chemical ResistanceStandardEnhanced (2x)Triple Industry Benchmark**
Cell Density200 cells/inch300 cells/inch400 cells/inch

Supplier's note

  1. Technical Breakthroughs:

    • High Surface Area: The honeycomb structure boosts catalytic efficiency by 40% compared to flat ceramics.
    • Chemical Stability: Triple-industry-standard resistance (Pro Model) enables safe handling of corrosive gases like sulfuric acid.
    • Customizable Porosity: Adjust pore size to balance airflow and filtration efficiency (e.g., 55% porosity for high-efficiency particulate capture).
  2. Optimal Version Selection:

    • Base Model: Ideal for standard ovens and low-pressure systems requiring cost-effective thermal insulation.
    • Advanced Model: Suited for moderate-temperature environments (e.g., automotive exhaust systems) needing enhanced durability.
    • Pro Model: Designed for extreme applications like steel furnaces or chemical reactors, where prolonged exposure to 1500°C+ and corrosive chemicals is common.

With triple the industry-standard chemical resistance, the Pro Model ensures safe handling of harsh chemicals in refinery processes. Pair its high porosity with mullite composition to achieve 20% faster heat dissipation than traditional cordierite ceramics, reducing energy costs in industrial kilns.

*Max temp values assume controlled environments. **Certified per ASTM C181-22 standards.

Frequently asked questions

  • Which cordierite ceramic honeycomb model is best suited for oven insulation applications?

  • How do I clean the honeycomb structure to maintain heat exchange efficiency?

  • Cordierite vs. Alumina Ceramic: Which material is better for high-temperature catalytic converters?

  • Can the ceramic honeycomb be customized for non-standard heat exchanger designs?

  • Is Yunnuo’s ceramic honeycomb eco-friendly and certified for industrial use?

  • How does the honeycomb structure improve heat exchanger efficiency?

  • What temperature range can the ceramic honeycomb withstand without degradation?

  • Why choose square-patterned cordierite over circular designs for air filtration?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
High Temperature ResistanceIndustrial furnaces, incineratorsIndustry Standard: 1000°C (ASTM C20)
Our Base: 1200°C (ASTM C20) ▲
Our Advanced: 1400°C (ASTM C20) ▲▲
Withstands extreme temperatures; extends equipment lifespan.Advanced versions may require specialized installation (e.g., reinforced mounts).
Thermal ConductivityHeat exchangers in power plantsIndustry Standard: 1.2 W/m·K (ISO 22007-2)
Our Base: 0.8 W/m·K ▲
Our Advanced: 0.6 W/m·K ▲▲
Reduces energy loss; improves heat transfer efficiency.Lower conductivity materials may increase production costs.
Chemical StabilityChemical processing plantsIndustry Standard: Resists 30 chemical exposures (ASTM D543)
Our Base: 50+ exposures ▲
Our Advanced: 100+ exposures ▲▲
Maintains integrity in corrosive environments; minimizes replacement frequency.Advanced materials may be incompatible with certain solvents.
CustomizationTailored industrial applicationsIndustry Standard: Limited to standard shapes
Our Base: Round/square shapes ▲
Our Advanced: Fully customizable geometry ▲▲
Meets unique design requirements (e.g., non-standard furnace dimensions).Advanced customization may lead to longer lead times.
Emission ReductionCatalytic converters, exhaust systemsIndustry Standard: 15% reduction (ISO 15158)
Our Base: 30% reduction ▲
Our Advanced: 45% reduction ▲▲
Meets stricter environmental regulations; reduces carbon footprint.Advanced versions may require frequent maintenance due to high catalytic activity.
Structural DurabilityHigh-vibration machinery (e.g., turbines)Industry Standard: 50 MPa compressive strength (ASTM C1338)
Our Base: 70 MPa ▲
Our Advanced: 90 MPa ▲▲
Resists mechanical stress; prevents cracking in dynamic environments.Advanced materials may be brittle under sudden temperature shifts.

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